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Interaction of Nanoparticles with Cells

机译:纳米粒子与细胞的相互作用

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Nanoparticles and their interaction with human cells have been a focus of many groups during the past decade. We discuss and review here the progress in the field of understanding and harnessing the interactions of polymeric nanoparticles synthesized by the miniemulsion process with different cell types. Nanotechnology and the hereby produced nanomaterials have promised to make use of specific properties of supramolecular assemblies and nanomaterials so that hitherto inaccessible effects can be exploited for new applications. Examples are superparamagnetism or the high surface area helpful for catalysis and adsorption. In biology and medicine, superparamagnetic iron oxide nanoparticles have been used for cell selection and as magnetic resonance imaging (MRI) contrast agents. Furthermore, uptake of nanoparticles into a wide variety of cells is an effect that seems to be specific for materials in the range of 50-200 nm. Surface modifications (positively or negatively charged side groups of the polymers, amino acids, or peptides/proteins) enhance this uptake. Knowledge about factors influencing cellular uptake, like size, surface properties, cell type, and endocytotic pathways, enables optimization of labeling and selection of cells and nanoparticles for applications in vitro and in vivo. For in vivo applications, we will focus on how nanoparticles can cross the blood-brain barrier.
机译:在过去的十年中,纳米粒子及其与人类细胞的相互作用一直是许多小组关注的焦点。我们在这里讨论和回顾在理解和利用通过细乳液工艺合成的聚合物纳米粒子与不同细胞类型的相互作用方面的进展。纳米技术和由此生产的纳米材料已承诺利用超分子组装体和纳米材料的特定特性,从而可以将迄今为止无法获得的效果用于新的应用。例如超顺磁性或高表面积有助于催化和吸附。在生物学和医学中,超顺磁性氧化铁纳米粒子已用于细胞选择和磁共振成像(MRI)造影剂。此外,纳米粒子被吸收到各种各样的细胞中的作用似乎对50-200 nm范围内的材料是特定的。表面修饰(聚合物,氨基酸或肽/蛋白质的带正电荷或负电荷的侧基)可增强这种摄取。有关影响细胞摄取的因素的知识,例如大小,表面性质,细胞类型和胞吞途径,可以优化细胞和纳米颗粒的标记和选择,以用于体外和体内应用。对于体内应用,我们将专注于纳米颗粒如何穿越血脑屏障。

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